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    • 6. 发明申请
    • MEASUREMENTS DEVICE
    • 测量装置
    • US20170052048A1
    • 2017-02-23
    • US15118878
    • 2015-01-29
    • FMC Kongsberg Subsea AS
    • Anders ErikssonSvein-Petter HanserudTruls-Martin LarsenArnstein Wee
    • G01F1/66G01F15/08G01N22/04G01F1/74
    • G01F1/662G01F1/66G01F1/74G01F15/00G01F15/08G01N22/00G01N22/04G01N33/2823
    • The present invention provides a device for measuring properties of a fluid flow in a pipe, comprising a first (1), second (2) and third pipe section (3), and where the first pipe section (1) comprises a fluid flow modifying feature arranged such that, during use, a liquid part of the fluid flow will form an annular layer (4) at an inner wall of the second pipe section (2), and the second pipe section (2) is arranged downstream of the first pipe section (1) and comprises at least one near field probe (5) having a first frequency range, and at least one full volume field probe (6) having a second frequency range, the upper limit of the first frequency range being lower than the lower limit of the second frequency range; the third pipe section (3) is arranged downstream of the second pipe section (2) and comprises a resonance enabling element (8), such that said element (8) and at least the second pipe section (2) provides a resonator able to capture parts of the frequency range of the full volume field probe (6).
    • 本发明提供了一种用于测量管中的流体流动性质的装置,包括第一管(1),第二管(2)和第三管段(3),并且其中第一管段(1)包括流体流动改变 特征在于,在使用期间,流体流的液体部分将在第二管段(2)的内壁处形成环形层(4),并且第二管段(2)布置在第一管段 管段(1)并且包括具有第一频率范围的至少一个近场探针(5)和具有第二频率范围的至少一个全体积场探测器(6),所述第一频率范围的上限低于 第二频率范围的下限; 第三管段(3)布置在第二管段(2)的下游并且包括谐振使能元件(8),使得所述元件(8)和至少第二管段(2)提供能够 捕获全部体积场探头(6)的频率范围的部分。
    • 9. 发明申请
    • HIGH-PRECISION DETERMINATION OF THE MASS PROPORTION OF A COMPONENT IN A MULTI-COMPONENT FLUID
    • 多分量流体中组分的质量分数的高精度测定
    • US20140190271A1
    • 2014-07-10
    • US14237875
    • 2012-08-22
    • Gilbert BraunPeter Kury
    • Gilbert BraunPeter Kury
    • G01F1/74
    • G01F1/74G01F15/08G01N33/0014
    • A method to determine a mass proportion of a first component of a multi-component fluid is provided that includes separating the first component in a separation step at least in part from the multi-component fluid, determining at least two reference flow rates, selected from a flow rate of the multi-component fluid supplied to the separation step, a flow rate of a residual fluid resulting from the separation of the first component, and a flow rate of a separation fluid accumulating in the separation step, and determining the mass proportion of the first component from the selected reference flow rates, taking into account a non-separated residual content of the first component in the residual fluid. An extraneous content of an additional separated component of the multi-component fluid is additionally taken into account.
    • 提供了一种确定多组分流体的第一组分的质量比例的方法,其包括在分离步骤中至少部分地与多组分流体分离第一组分,确定至少两个参考流速,所述参考流速选自 提供给分离步骤的多组分流体的流量,由第一组分分离产生的残留流体的流量和在分离步骤中积聚的分离流体的流量,以及确定质量比例 考虑到剩余流体中的第一组分的未分离残留含量,所选择的参考流速中的第一组分的第一组分。 还考虑了多组分流体的额外分离成分的外来含量。